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与GaAs/AlGaAs量子阱子能带相关的共振和非共振杂质态

Resonant and Non-Resonant Impurity States Related to GaAs/AlGaAs Quantum Well Sub-Bands.

作者信息

Akimov Volodymyr, Tulupenko Viktor, Demediuk Roman, Tiutiunnyk Anton, Duque Carlos A, Morales Alvaro L, Laroze David, Mora-Ramos Miguel Eduardo

机构信息

Facultad de Ciencias Básicas, Universidad de Medellín, Medellín 050026, Colombia.

Grupo de Materia Condensada-UdeA, Instituto de Física, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia UdeA, Medellín 050010, Colombia.

出版信息

Materials (Basel). 2024 Dec 24;18(1):17. doi: 10.3390/ma18010017.

Abstract

The energy positions and wave function shapes of the ground and excited states of impurities, including resonance states, are studied using the expansion of the impurity wave function in basis functions. The structures under study are rectangular GaAs/AlGaAs quantum wells with four different widths. In all cases, the impurity binding energy (relative to the corresponding sub-band) has a maximum at or near the center of the quantum well, decreases as the heterointerface is approached, and apparently has a limit of 0 if the impurity moves deeper into the barrier. If the impurity moves away from the center of the quantum well, then the "center of mass" of the electron charge of non-resonant impurity states follows the impurity atom, and the "center of mass" of the electron charge of the resonant impurity states moves away from it. The effect is more pronounced for the ground and first resonance states for wider quantum wells, and the shifts reach a maximum when the impurity atom is positioned near the midpoint of the path between the quantum well center and the heterointerface.

摘要

利用杂质波函数在基函数中的展开,研究了包括共振态在内的杂质基态和激发态的能量位置及波函数形状。所研究的结构是具有四种不同宽度的矩形GaAs/AlGaAs量子阱。在所有情况下,杂质束缚能(相对于相应子带)在量子阱中心或其附近达到最大值,随着靠近异质界面而减小,并且如果杂质深入到势垒中,显然其极限为0。如果杂质从量子阱中心移开,那么非共振杂质态电子电荷的“质心”会跟随杂质原子移动,而共振杂质态电子电荷的“质心”则会远离杂质原子。对于较宽量子阱的基态和第一共振态,这种效应更为明显,当杂质原子位于量子阱中心与异质界面之间路径的中点附近时,位移达到最大值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa23/11721897/51cf8a2ea348/materials-18-00017-g002.jpg

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